首页> 外文期刊>International Journal of Molecular Sciences >“Bligh and Dyer” and Folch Methods for Solid–Liquid–Liquid Extraction of Lipids from Microorganisms. Comprehension of Solvatation Mechanisms and towards Substitution with Alternative Solvents
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“Bligh and Dyer” and Folch Methods for Solid–Liquid–Liquid Extraction of Lipids from Microorganisms. Comprehension of Solvatation Mechanisms and towards Substitution with Alternative Solvents

机译:“ Bligh and Dyer”和Folch方法从微生物固液提取脂质。理解溶剂化机制并寻求替代溶剂的替代

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Bligh and Dyer (B & D) or Folch procedures for the extraction and separation of lipids from microorganisms and biological tissues using chloroform/methanol/water have been used tens of thousands of times and are “gold standards” for the analysis of extracted lipids. Based on the Conductor-like Screening MOdel for realistic Solvatation (COSMO-RS), we select ethanol and ethyl acetate as being potentially suitable for the substitution of methanol and chloroform. We confirm this by performing solid–liquid extraction of yeast ( Yarrowia lipolytica IFP29 ) and subsequent liquid–liquid partition—the two steps of routine extraction. For this purpose, we consider similar points in the ternary phase diagrams of water/methanol/chloroform and water/ethanol/ethyl acetate, both in the monophasic mixtures and in the liquid–liquid miscibility gap. Based on high performance thin-layer chromatography (HPTLC) to obtain the distribution of lipids classes, and gas chromatography coupled with a flame ionisation detector (GC/FID) to obtain fatty acid profiles, this greener solvents pair is found to be almost as effective as the classic methanol–chloroform couple in terms of efficiency and selectivity of lipids and non-lipid material. Moreover, using these bio-sourced solvents as an alternative system is shown to be as effective as the classical system in terms of the yield of lipids extracted from microorganism tissues, independently of their apparent hydrophilicity.
机译:使用氯仿/甲醇/水从微生物和生物组织中提取和分离脂质的Bligh和Dyer(B&D)或Folch程序已使用了数万次,是分析提取的脂质的“金标准”。基于用于实际溶剂化的类似导体的筛选模型(COSMO-RS),我们选择乙醇和乙酸乙酯作为潜在适合替代甲醇和氯仿的方法。我们通过对酵母菌(解脂耶氏酵母IFP29)进行固液萃取和随后的液液分配(常规萃取的两个步骤)来确认这一点。为此,我们在水/甲醇/氯仿和水/乙醇/乙酸乙酯的三元相图中,在单相混合物和液-液混溶间隙中都考虑了类似的点。基于高效薄层色谱(HPTLC)获得脂质类别的分布,以及气相色谱与火焰离子化检测器(GC / FID)结合获得脂肪酸谱,该绿色溶剂对几乎有效。就脂质和非脂质物质的效率和选择性而言,它是经典的甲醇-氯仿对。此外,就从微生物组织中提取的脂质的产量而论,无论其表观亲水性如何,使用这些生物来源的溶剂作为替代系统均被证明与经典系统一样有效。

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